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首页> 外文期刊>Journal of oceanography >Spatial and Temporal Scale Variations of Sea Surface Temperature in the East Sea Using NOAA/AVHRR Data
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Spatial and Temporal Scale Variations of Sea Surface Temperature in the East Sea Using NOAA/AVHRR Data

机译:基于NOAA / AVHRR数据的东海海温时空尺度变化。

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摘要

Sea surface temperature fields in the East Sea are composed of various spatial structures such as eddies, fronts, filaments, turbulent-like features and other mesoscale variations associated with the oceanic circulations of the East Sea. These complex SST structures have many spatial scales and evole with time. Semi-monthly averaged SST distributions based on extensive satellite observations of SSTs from 1990 through 1995 were constructed to examine the characteristics of their spatial and temporal scale variations by using statistical methods of multi-dimensional autocorrelation functions and spectral analysis. Two-dimensional autocorrelation functions in the central part of the East Sea revealed that most of the spatial SST structures are anisotropic in the shape of ellipsoids with minor axes of about 90–290 km and major axes of 100–400 km. Two dimensional spatial scale analysis demonstrated a consistent pattern of seasonal variation that the scales appear small in winter and spring, increase gradually to summer, and then decrease again until the spring of the next year. These structures also show great spatial inhomogeneity and rapid temporal change on time scales as short as a semi-month in some cases. The slopes in spectral energy density spectra of SSTs show characteristics quite similar to horizontal and geostrophic turbulence. Temporal spectra at each latitude are demonstrated by predominant peaks of one and two cycles per year in all regions of the East Sea, implying that SSTs present very strong annual and semi-annual variations.
机译:东海的海表温度场由各种空间结构组成,例如涡流,锋面,细丝,湍流状特征以及与东海的海洋环流相关的其他中尺度变化。这些复杂的SST结构具有许多空间尺度,并且会随着时间而消失。根据1990年至1995年对SST的广泛卫星观测,构建了半月平均SST分布,以通过使用多维自相关函数的统计方法和频谱分析来检查其空间和时间尺度变化的特征。东海中部的二维自相关函数表明,大多数空间SST结构是各向异性的椭圆形,短轴约90-290 km,长轴约100-400 km。二维空间尺度分析表明,季节变化的规律是一致的,即尺度在冬季和春季显得较小,到夏季逐渐增大,然后再次减小直到第二年春季。在某些情况下,这些结构在短至半个月的时间尺度上也表现出极大的空间不均匀性和快速的时间变化。 SST的光谱能量密度谱中的斜率显示出与水平湍流和地转湍流非常相似的特性。在东海所有地区,每年一次和两个周期的主要峰值证明了每个纬度的时空频谱,这意味着海表温度呈现非常强烈的年度和半年度变化。

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